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Integrated modeling and analysis of the multiple electromechanical couplings for the direct driven feed system in machine tools

机译:机床直接驱动进给系统的多种机电联轴器的集成建模和分析

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摘要

The complicated electromechanical coupling phenomena due to different kinds of causes have significant influences on the dynamic precision of the direct driven feed system in machine tools. In this paper, a novel integrated modeling and analysis method of the multiple electromechanical couplings for the direct driven feed system in machine tools is presented. At first, four different kinds of electromechanical coupling phenomena in the direct driven feed system are analyzed systematically. Then a novel integrated modeling and analysis method of the electromechanical coupling which is influenced by multiple factors is put forward. In addition, the effects of multiple electromechanical couplings on the dynamic precision of the feed system and their main influencing factors are compared and discussed, respectively. Finally, the results of modeling and analysis are verified by the experiments. It finds out that multiple electromechanical coupling loops, which are overlapped and influenced by each other, are the main reasons of the displacement fluctuations in the direct driven feed system.
机译:由于各种原因引起的复杂的机电耦合现象对机床中直接驱动进给系统的动态精度有重大影响。本文提出了一种新型的机电直接驱动进给系统的多机电联轴器综合建模与分析方法。首先,系统分析了直接驱动进给系统中的四种不同类型的机电耦合现象。提出了一种受多种因素影响的机电耦合综合建模与分析方法。此外,分别比较和讨论了多种机电耦合对进给系统动态精度的影响及其主要影响因素。最后,通过实验验证了建模和分析的结果。结果发现,多个机电耦合环是相互重叠且相互影响的,这是直接驱动进给系统中位移波动的主要原因。

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